Activation mechanisms of conventional protein kinase C isoforms are determined by the ligand affinity and conformational flexibility of their C1 domains

scientific article published on 3 September 2003

Activation mechanisms of conventional protein kinase C isoforms are determined by the ligand affinity and conformational flexibility of their C1 domains is …
instance of (P31):
scholarly articleQ13442814

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P356DOI10.1074/JBC.M307853200
P698PubMed publication ID12954613

P50authorMichelle A DigmanQ62062552
P2093author name stringWonhwa Cho
Robert V Stahelin
Bharath Ananthanarayanan
P2860cites workThe C2 domain calcium-binding motif: structural and functional diversityQ24674621
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Crystal structure of the cys2 activator-binding domain of protein kinase C delta in complex with phorbol esterQ27730271
NMR structure of a protein kinase C-gamma phorbol-binding domain and study of protein-lipid micelle interactionsQ27742407
C2 domains of protein kinase C isoforms alpha, beta, and gamma: activation parameters and calcium stoichiometries of the membrane-bound stateQ28613889
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Protein kinase C gamma (PKC gamma): function of neuron specific isotypeQ34157744
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Novel "nonkinase" phorbol ester receptors: the C1 domain connectionQ34568760
Surface plasmon resonance spectroscopy: an emerging tool for the study of peptide-membrane interactionsQ34850080
Move over protein kinase C, you've got company: alternative cellular effectors of diacylglycerol and phorbol esters.Q34988000
Regulation of the ABC kinases by phosphorylation: protein kinase C as a paradigmQ35031770
Surface plasmon resonance spectroscopy in the study of membrane-mediated cell signallingQ35083413
Non-equivalent roles for the first and second zinc fingers of protein kinase Cdelta. Effect of their mutation on phorbol ester-induced translocation in NIH 3T3 cellsQ38354423
The molecular basis of differential subcellular localization of C2 domains of protein kinase C-alpha and group IVa cytosolic phospholipase A2.Q40676859
Regulation of PKC alpha activity by C1-C2 domain interactionsQ40750357
Roles of ionic residues of the C1 domain in protein kinase C-alpha activation and the origin of phosphatidylserine specificity.Q40849607
Protein kinase C. Seeing two domainsQ40935513
Lateral pressure in membranesQ41290982
A structure-function study of the C2 domain of cytosolic phospholipase A2. Identification of essential calcium ligands and hydrophobic membrane binding residues.Q42058981
Activation of protein kinase C subtypes alpha, gamma, delta, epsilon, zeta, and eta by tumor-promoting and nontumor-promoting agentsQ42062593
Relation between various phospholipase actions on human red cell membranes and the interfacial phospholipid pressure in monolayersQ43568458
Differential roles of ionic, aliphatic, and aromatic residues in membrane-protein interactions: a surface plasmon resonance study on phospholipases A2.Q43569366
Importance of C1B domain for lipid messenger-induced targeting of protein kinase C.Q43904686
A comparative study of the phase transitions of phospholipid bilayers and monolayersQ45021086
Protein kinase Calpha contains two activator binding sites that bind phorbol esters and diacylglycerols with opposite affinitiesQ49103877
Studies on the primary sequence requirements for PKC-α, -β1 and -γ peptide substratesQ57833252
P433issue47
P407language of work or nameEnglishQ1860
P1104number of pages9
P304page(s)46886-46894
P577publication date2003-09-03
P1433published inJournal of Biological ChemistryQ867727
P1476titleActivation mechanisms of conventional protein kinase C isoforms are determined by the ligand affinity and conformational flexibility of their C1 domains
P478volume278

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cites work (P2860)
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